Bhamidi Venkateswarlu, Varanasi Sasidhar, Schall Constance A
Department of Chemical & Environmental Engineering, University of Toledo, 2801 W. Bancroft St., Toledo, OH 43606, USA.
Langmuir. 2005 Sep 27;21(20):9044-50. doi: 10.1021/la050711g.
Fundamental understanding of protein crystal nucleation facilitates crystallization of biological macromolecules for structure determination and control of crystal size distribution. In the studies presented here, nucleation kinetics of hen egg-white lysozyme crystals were measured at solution conditions that exhibited equal solubility by adjusting pH, temperature, or sodium chloride concentration. It was observed that solution conditions that lead to equal solubility resulted in equal nucleation rates and hence kinetic parameters. Since the solubility of globular proteins correlates with the osmotic second virial coefficient, B(22), an integral measure of the protein pair interaction potential, this observation indicates that the protein pair interaction plays a key role in determining nucleation kinetic parameters.
对蛋白质晶体成核的基本理解有助于生物大分子结晶,以用于结构测定和控制晶体尺寸分布。在本文所呈现的研究中,通过调节pH值、温度或氯化钠浓度,在具有相同溶解度的溶液条件下测量了鸡蛋清溶菌酶晶体的成核动力学。观察到导致相同溶解度的溶液条件会产生相同的成核速率,进而产生相同的动力学参数。由于球状蛋白质的溶解度与渗透压第二维里系数B(22)相关,B(22)是蛋白质对相互作用势的一种综合度量,这一观察结果表明蛋白质对相互作用在确定成核动力学参数方面起着关键作用。